本文整理汇总了C#中System.Security.Cryptography.CryptoAPITransform类的典型用法代码示例。如果您正苦于以下问题:C# CryptoAPITransform类的具体用法?C# CryptoAPITransform怎么用?C# CryptoAPITransform使用的例子?那么恭喜您, 这里精选的类代码示例或许可以为您提供帮助。
CryptoAPITransform类属于System.Security.Cryptography命名空间,在下文中一共展示了CryptoAPITransform类的1个代码示例,这些例子默认根据受欢迎程度排序。您可以为喜欢或者感觉有用的代码点赞,您的评价将有助于系统推荐出更棒的C#代码示例。
示例1: DESCryptoServiceProvider
//引入命名空间
using System;
using System.Security.Cryptography;
using System.Collections;
using System.Text;
class Members
{
// Use a public service provider for encryption and decryption.
static DESCryptoServiceProvider des = new DESCryptoServiceProvider();
[STAThread]
static void Main(string[] args)
{
string message = "012345678901234567890";
byte[] sourceBytes = Encoding.ASCII.GetBytes(message);
Console.WriteLine("** Phrase to be encoded: " + message);
byte[] encodedBytes = EncodeBytes(sourceBytes);
Console.WriteLine("** Phrase after encoding: " +
Encoding.ASCII.GetString(encodedBytes));
byte[] decodedBytes = DecodeBytes(encodedBytes);
Console.WriteLine("** Phrase after decoding: " +
Encoding.ASCII.GetString(decodedBytes));
Console.WriteLine("Sample ended successfully; " +
"press Enter to continue.");
Console.ReadLine();
}
// Encode the specified byte array by using CryptoAPITranform.
private static byte[] EncodeBytes(byte[] sourceBytes)
{
int currentPosition = 0;
byte[] targetBytes = new byte[1024];
int sourceByteLength = sourceBytes.Length;
// Create a DES encryptor from this instance to perform encryption.
CryptoAPITransform cryptoTransform =
(CryptoAPITransform)des.CreateEncryptor();
// Retrieve the block size to read the bytes.
int inputBlockSize = cryptoTransform.InputBlockSize;
// Retrieve the key handle.
IntPtr keyHandle = cryptoTransform.KeyHandle;
// Retrieve the block size to write the bytes.
int outputBlockSize = cryptoTransform.OutputBlockSize;
try
{
// Determine if multiple blocks can be transformed.
if (cryptoTransform.CanTransformMultipleBlocks)
{
int numBytesRead = 0;
while (sourceByteLength - currentPosition >= inputBlockSize)
{
// Transform the bytes from currentPosition in the
// sourceBytes array, writing the bytes to the targetBytes
// array.
numBytesRead = cryptoTransform.TransformBlock(
sourceBytes,
currentPosition,
inputBlockSize,
targetBytes,
currentPosition);
// Advance the current position in the sourceBytes array.
currentPosition += numBytesRead;
}
// Transform the final block of bytes.
byte[] finalBytes = cryptoTransform.TransformFinalBlock(
sourceBytes,
currentPosition,
sourceByteLength - currentPosition);
// Copy the contents of the finalBytes array to the
// targetBytes array.
finalBytes.CopyTo(targetBytes, currentPosition);
}
}
catch (Exception ex)
{
Console.WriteLine("Caught unexpected exception:" + ex.ToString());
}
// Determine if the current transform can be reused.
if (!cryptoTransform.CanReuseTransform)
{
// Free up any used resources.
cryptoTransform.Clear();
}
// Trim the extra bytes in the array that were not used.
return TrimArray(targetBytes);
}
// Decode the specified byte array using CryptoAPITranform.
private static byte[] DecodeBytes(byte[] sourceBytes)
{
byte[] targetBytes = new byte[1024];
int currentPosition = 0;
// Create a DES decryptor from this instance to perform decryption.
CryptoAPITransform cryptoTransform =
(CryptoAPITransform)des.CreateDecryptor();
int inputBlockSize = cryptoTransform.InputBlockSize;
int sourceByteLength = sourceBytes.Length;
try
{
int numBytesRead = 0;
while (sourceByteLength - currentPosition >= inputBlockSize)
{
// Transform the bytes from current position in the
// sourceBytes array, writing the bytes to the targetBytes
// array.
numBytesRead = cryptoTransform.TransformBlock(
sourceBytes,
currentPosition,
inputBlockSize,
targetBytes,
currentPosition);
// Advance the current position in the source array.
currentPosition += numBytesRead;
}
// Transform the final block of bytes.
byte[] finalBytes = cryptoTransform.TransformFinalBlock(
sourceBytes,
currentPosition,
sourceByteLength - currentPosition);
// Copy the contents of the finalBytes array to the targetBytes
// array.
finalBytes.CopyTo(targetBytes, currentPosition);
}
catch (Exception ex)
{
Console.WriteLine("Caught unexpected exception:" + ex.ToString());
}
// Strip out the second block of bytes.
Array.Copy(targetBytes, (inputBlockSize * 2), targetBytes, inputBlockSize, targetBytes.Length - (inputBlockSize * 2));
// Trim the extra bytes in the array that were not used.
return TrimArray(targetBytes);
}
// Resize the dimensions of the array to a size that contains only valid
// bytes.
private static byte[] TrimArray(byte[] targetArray)
{
IEnumerator enum1 = targetArray.GetEnumerator();
int i = 0;
while (enum1.MoveNext())
{
if (enum1.Current.ToString().Equals("0"))
{
break;
}
i++;
}
// Create a new array with the number of valid bytes.
byte[] returnedArray = new byte[i];
for (int j = 0; j < i; j++)
{
returnedArray[j] = targetArray[j];
}
return returnedArray;
}
}
//
输出:
** Phrase to be encoded: 012345678901234567890 ** Phrase after encoding: AIGC(+b7X?^djAU?15ve?o ** Phrase after decoding: 012345678901234567890 Sample ended successfully; press Enter to continue.